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Graphite-carbon Nanotube Composite Electrodes For All Vanadium Redox Flow Battery

机译:适用于所有钒氧化还原液流电池的石墨-碳纳米管复合电极

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The voltammetric behaviors of graphite (GP) and its composites with carbon nanotube (CNT) were studied in 5 M H_2SO_4 + 1 M VOSO_4 solution with cyclic voltammetry (CV), and the surface morphology of the composites was observed with scanning electron microscope (SEM). The results obtained from voltammetry show that the redox couples of V(IV)/V(V) and V(II)/V(III), as positive and negative electrodes of all vanadium flow liquid battery, respectively, have good reversibility but low current on the GP electrode, and the current can be improved by CNT. It is found from the observation of SEM that the CNT is dispersed evenly on the surface of sheet GP when they are mixed together. The best composition for the positive and the negative of all vanadium flow liquid battery determined by comparing voltammetric behavior of the composite electrodes with different content of CNT is 5:95 (w_(CNT)/w_(GP)) for both positive and negative electrodes. The activity of the composite electrode can be affected by the heat treatment of CNT. CNT treated at 200 ℃ gives better activity to the composite electrode.
机译:用循环伏安法(CV)在5 M H_2SO_4 + 1 M VOSO_4溶液中研究了石墨(GP)及其复合物与碳纳米管(CNT)的伏安行为,并用扫描电子显微镜(SEM)观察了复合物的表面形态。 )。从伏安法获得的结果表明,V(IV)/ V(V)和V(II)/ V(III)的氧化还原对分别作为所有钒液电池的正极和负极,具有良好的可逆性,但电导率较低GP电极上的电流,CNT可以改善电流。从SEM观察发现,当CNT混合在一起时,CNT均匀地分散在片GP的表面上。通过比较具有不同CNT含量的复合电极的伏安行为,确定所有钒液电池的正极和负极的最佳组成分别为正电极和负电极均为5:95(w_(CNT)/ w_(GP)) 。 CNT的热处理会影响复合电极的活性。在200℃下处理的CNT使复合电极具有更好的活性。

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